Amanda Lais de Souza Coto , Arthur Alexandre Pereira , Sabrina Dorta Oliveira , Milene Nobrega de Oliveira Moritz , Arthur Moraes Franco da Rocha , Paulo Roberto Dores-Silva , Noeli Soares Melo da Silva , Ana Rita de Araújo Nogueira , Lisandra Marques Gava , Thiago Vagas Seraphim , Júlio César Borges
{"title":"溶液中人DjC20/HscB辅酶A的结构表征。","authors":"Amanda Lais de Souza Coto , Arthur Alexandre Pereira , Sabrina Dorta Oliveira , Milene Nobrega de Oliveira Moritz , Arthur Moraes Franco da Rocha , Paulo Roberto Dores-Silva , Noeli Soares Melo da Silva , Ana Rita de Araújo Nogueira , Lisandra Marques Gava , Thiago Vagas Seraphim , Júlio César Borges","doi":"10.1016/j.bbapap.2023.140970","DOIUrl":null,"url":null,"abstract":"<div><p><span><span><span>J-domain proteins (JDPs) form a very large molecular chaperone family involved in proteostasis processes, such as </span>protein folding, trafficking through membranes and degradation/disaggregation. JDPs are </span>Hsp70<span> co-chaperones capable of stimulating ATPase activity as well as selecting and presenting client proteins to Hsp70. In mitochondria, human DjC20/HscB (a type III JDP that possesses only the conserved J-domain in some region of the protein) is involved in [FeS] protein biogenesis and assists human mitochondrial Hsp70 (HSPA9). Human DjC20 possesses a zinc-finger domain in its N-terminus, which closely contacts the J-domain and appears to be essential for its function. Here, we investigated the hDjC20 structure in solution as well as the importance of Zn</span></span><sup>+2</sup><span><span> for its stability. The recombinant hDjC20 was pure, folded and capable of stimulating HSPA9 ATPase activity. It behaved as a slightly elongated </span>monomer, as attested by small-angle X-ray scattering and SEC-MALS. The presence of Zn</span><sup>2+</sup><span> in the hDjC20 samples was verified, a stoichiometry<span> of 1:1 was observed, and its removal by high concentrations of EDTA and DTPA was unfeasible. However, thermal and chemical denaturation in the presence of EDTA led to a reduction in protein stability, suggesting a synergistic action between the chelating agent and denaturators that facilitate protein unfolding depending on metal removal. These data suggest that the affinity of Zn</span></span><sup>+2</sup> for the protein is very high, evidencing its importance for the hDjC20 structure.</p></div>","PeriodicalId":8760,"journal":{"name":"Biochimica et biophysica acta. Proteins and proteomics","volume":null,"pages":null},"PeriodicalIF":2.5000,"publicationDate":"2023-10-21","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Structural characterization of the human DjC20/HscB cochaperone in solution\",\"authors\":\"Amanda Lais de Souza Coto , Arthur Alexandre Pereira , Sabrina Dorta Oliveira , Milene Nobrega de Oliveira Moritz , Arthur Moraes Franco da Rocha , Paulo Roberto Dores-Silva , Noeli Soares Melo da Silva , Ana Rita de Araújo Nogueira , Lisandra Marques Gava , Thiago Vagas Seraphim , Júlio César Borges\",\"doi\":\"10.1016/j.bbapap.2023.140970\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p><span><span><span>J-domain proteins (JDPs) form a very large molecular chaperone family involved in proteostasis processes, such as </span>protein folding, trafficking through membranes and degradation/disaggregation. JDPs are </span>Hsp70<span> co-chaperones capable of stimulating ATPase activity as well as selecting and presenting client proteins to Hsp70. In mitochondria, human DjC20/HscB (a type III JDP that possesses only the conserved J-domain in some region of the protein) is involved in [FeS] protein biogenesis and assists human mitochondrial Hsp70 (HSPA9). Human DjC20 possesses a zinc-finger domain in its N-terminus, which closely contacts the J-domain and appears to be essential for its function. Here, we investigated the hDjC20 structure in solution as well as the importance of Zn</span></span><sup>+2</sup><span><span> for its stability. The recombinant hDjC20 was pure, folded and capable of stimulating HSPA9 ATPase activity. It behaved as a slightly elongated </span>monomer, as attested by small-angle X-ray scattering and SEC-MALS. The presence of Zn</span><sup>2+</sup><span> in the hDjC20 samples was verified, a stoichiometry<span> of 1:1 was observed, and its removal by high concentrations of EDTA and DTPA was unfeasible. However, thermal and chemical denaturation in the presence of EDTA led to a reduction in protein stability, suggesting a synergistic action between the chelating agent and denaturators that facilitate protein unfolding depending on metal removal. These data suggest that the affinity of Zn</span></span><sup>+2</sup> for the protein is very high, evidencing its importance for the hDjC20 structure.</p></div>\",\"PeriodicalId\":8760,\"journal\":{\"name\":\"Biochimica et biophysica acta. 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Structural characterization of the human DjC20/HscB cochaperone in solution
J-domain proteins (JDPs) form a very large molecular chaperone family involved in proteostasis processes, such as protein folding, trafficking through membranes and degradation/disaggregation. JDPs are Hsp70 co-chaperones capable of stimulating ATPase activity as well as selecting and presenting client proteins to Hsp70. In mitochondria, human DjC20/HscB (a type III JDP that possesses only the conserved J-domain in some region of the protein) is involved in [FeS] protein biogenesis and assists human mitochondrial Hsp70 (HSPA9). Human DjC20 possesses a zinc-finger domain in its N-terminus, which closely contacts the J-domain and appears to be essential for its function. Here, we investigated the hDjC20 structure in solution as well as the importance of Zn+2 for its stability. The recombinant hDjC20 was pure, folded and capable of stimulating HSPA9 ATPase activity. It behaved as a slightly elongated monomer, as attested by small-angle X-ray scattering and SEC-MALS. The presence of Zn2+ in the hDjC20 samples was verified, a stoichiometry of 1:1 was observed, and its removal by high concentrations of EDTA and DTPA was unfeasible. However, thermal and chemical denaturation in the presence of EDTA led to a reduction in protein stability, suggesting a synergistic action between the chelating agent and denaturators that facilitate protein unfolding depending on metal removal. These data suggest that the affinity of Zn+2 for the protein is very high, evidencing its importance for the hDjC20 structure.
期刊介绍:
BBA Proteins and Proteomics covers protein structure conformation and dynamics; protein folding; protein-ligand interactions; enzyme mechanisms, models and kinetics; protein physical properties and spectroscopy; and proteomics and bioinformatics analyses of protein structure, protein function, or protein regulation.